Reference solutions for compressible single-phase flows in heated and cooled ducts

Author:

Schropff S.1ORCID,Petitpas F.1ORCID,Daniel E.1ORCID

Affiliation:

1. Aix Marseille Univ, CNRS, IUSTI , Marseille, France

Abstract

Analytical/quasi-analytical solutions are proposed for a steady, compressible, single-phase flow in a rectilinear duct subjected to heating followed by cooling. The flow is driven by the pressure ratio between an upstream tank and a variable outlet pressure. The article proposes a methodology to determine the full flow behavior, as a function of pressure ratio and heat-flux distribution. Following an analogy done with the study of compressible flows in nozzles, a behavioral classification of non-adiabatic compressible flows is proposed through the definition of critical pressure ratios. It is demonstrated that a critical pressure ratio distinguishes subsonic and supersonic outlet regimes and that there cannot be a steady shock wave in such configuration. The behavior of this critical pressure ratio is studied for limit cases of heat flux, delineating physical boundaries. An abacus is also proposed for a given couple of heating and cooling powers, as both values are needed to characterize the flow. Results are studied for parameters such as pressure ratio and outlet heat power. A short validation of a numerical simulation tool is provided, yielding excellent results and very small relative errors.

Publisher

AIP Publishing

Reference10 articles.

1. B. L. Hicks , “ Addition of heat to a compressible fluid in motion,” Report No. NACA-ACR-E5A29 (1945).

2. Liquid-vapor flows in heated ducts: Reference solutions;Int. J. Heat Mass Transfer,2018

3. Numerical solution of non-isothermal non-adiabatic flow of real gases in pipelines;J. Comput. Phys.,2016

4. ECOGEN: An open-source tool for multiphase, compressible, multiphysics flows;Comput. Phys. Commun.,2020

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